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Longitudinal Profiles of Carbon Dioxide Fixation Capacities in Marine Macroalgae

机译:海洋大型藻类中二氧化碳固定能力的纵向剖面

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摘要

Fucus serratus L., Fucus spiralis L., and Fucus vesiculosus L. (Fucales, Phaeophyceae) as well as Laminaria digitata (Huds.) Lamour., Laminaria hyperborea (Gunn.) Fosl., and Laminaria saccharina (L.) Lamour. (Laminariales, Phaeophyceae) have been investigated for the distribution of enzymic CO2 fixation capacities via phosphoenolpyruvate carboxykinase (EC 4.1.1.32) (PEP-CK) and via ribulose-1,5-bisphosphate carboxylase (EC 4.1.1.39) (RubP-C) in different regions of the thalli. The maximum of PEP-CK activity is found to be confined to the growing regions of the algae, while the activity of RubP-C achieves its highest values in the entirely differentiated parts of the fronds. These findings are confirmed by the results of photosynthetic and light-independent (dark) carbon assimilation as determined by in vivo 14CO2 fixation. The physiological significance of these differential patterns of carboxylation patterns is discussed with respect to the ontogenetic stage and the chemical constitution of the different thallus parts.
机译:锯形岩藻(Fuss serratus L.),螺旋藻(Fusus spiralis L.)和褐藻(Fusus vesiculosus L. (Laminariales,Phaeophyceae)已通过磷酸烯醇丙酮酸羧激酶(EC 4.1.1.32)(PEP-CK)和1,5-双磷酸核糖羧化酶(EC 4.1.1.39)(RubP-C)进行了酶CO2固定能力分布的研究)在塔利的不同区域。发现PEP-CK的最大活性局限于藻类的生长区域,而RubP-C的活性在叶的完全分化部分达到最高值。通过体内 14 CO2固定确定的光合作用和光不依赖(暗)碳同化的结果证实了这些发现。讨论了羧基化模式的这些差异模式的生理学意义,涉及个体发育阶段和不同th体部位的化学组成。

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